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首页> 外文期刊>Journal of drug targeting >Drug delivery to tumours using a novel 5-FU derivative encapsulated into lipid nanocapsules
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Drug delivery to tumours using a novel 5-FU derivative encapsulated into lipid nanocapsules

机译:使用一种包封成脂质纳米胶囊的新型5-FU衍生物对肿瘤的药物递送

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In this work, a novel lipophilic 5-fluorouracil (5-FU) derivative was synthesised and encapsulated into lipid nanocapsules (LNC). 5-FU was modified with lauric acid to give a lipophilic mono-lauroyl-derivative (5-FU-C12, MW of about 342g/mol, yield of reaction 70%). 5-FU-C12 obtained was efficiently encapsulated into LNC (encapsulation efficiency above 90%) without altering the physico-chemical characteristics of LNC. The encapsulation of 5-FU-C12 led to an increased stability of the drug when in contact with plasma being the drug detectable until 3h following incubation. Cytotoxicity assay carried out using MTS on 2D cell culture showed that 5-FU-C12-loaded LNC had an enhanced cytotoxic effect on glioma (9L) and human colorectal (HTC-116) cancer cell line in comparison with 5-FU or 5-FU-C12. Then, HCT-116 tumour spheroids were cultivated and the reduction of spheroid volume was measured following treatment with drug-loaded LNC and drugs alone. Similar reduction on spheroids volume was observed following the treatment with drug-loaded LNC, 5-FU-C12 and 5-FU alone, while blank LNC displayed a reduction in cell viability only at high concentration. Globally, our data suggest that the encapsulation increased the activity of the 5-FU-C12. However, in-depth evaluations of LNC permeability into spheroids are needed to disclose the potential of these nanosystems for cancer treatment.
机译:在这项工作中,合成了一种新型的亲脂性5-氟尿嘧啶(5-FU)衍生物并将其包封成脂质纳米胶囊(LNC)。用月桂酸改性5-FU,得到亲脂单酸的脂肪酸(5-FU-C12,MW约342g / mol,反应产率70%)。将5-FU-C12得到有效地包封在LNC(超过90%以上的包封效率)而不改变LNC的物理化学特性。当在与孵育后3小时内可检测到3H的药物接触时,5-FU-C12的封装导致药物的稳定性增加。使用MTS对2D细胞培养的细胞毒性测定表明,与5-FU或5-相比,5-FU-C12负载LNC对胶质瘤(9L)和人结肠直肠(HTC-116)癌细胞系具有增强的细胞毒性作用。 FU-C12。然后,培养HCT-116肿瘤球状体,单独使用药物加载的LNC和药物处理后测量球体体积的减少。在用载药的LNC,5-FU-C12和5-FU的处理后观察到球状体积的类似减少,而空白LNC仅以高浓度显示细胞活力。在全球范围内,我们的数据表明,封装增加了5-FU-C12的活动。然而,需要对LNC渗透率的深入评估,以公开这些纳米系统用于癌症治疗的潜力。

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